Efficient discovery and capture of new neuronal nitric oxide synthase-postsynaptic density protein-95 uncouplers from herbal medicines using magnetic molecularly imprinted polymers as artificial antibodies
Author:
Affiliation:
1. School of Pharmacy; Nanjing Medical University; Nanjing China
2. Tang Center for Herbal Medicine Research; and Department of Anesthesia and Critical Care; University of Chicago; Chicago IL USA
Funder
National Natural Science Foundation of China
Publisher
Wiley
Subject
Filtration and Separation,Analytical Chemistry
Reference42 articles.
1. Salvaging brain ischemia by increasing neuroprotectant uptake via nanoagonist mediated blood brain barrier permeability enhancement;Zheng;Biomaterials,2015
2. The effect of cationic albumin-conjugated PEGylated tanshinone IIA nanoparticles on neuronal signal pathways and neuroprotection in cerebral ischemia;Liu;Biomaterials,2013
3. Targeted therapy of brain ischaemia using Fas ligand antibody conjugated PEG-lipid nanoparticles;Lu;Biomaterials,2014
4. Pathologically activated therapeutics for neuroprotection;Lipton;Nat. Rev. Neurosci.,2007
5. Treatment of cerebral ischemia by disrupting ischemia-induced interaction of nNOS with PSD-95;Zhou;Nat. Med.,2010
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